- Arts & Culture 6204
- Business & Economics 676
- Computers 329
- Dictionaries & Encyclopedias 70
- Education & Science 76847
- Abstracts 73
- Astrology 4
- Biology 8
- Chemistry 3920
- Coursework 15556
- Culture 8
- Diplomas 316
- Drawings 1596
- Ecology 5
- Economy 81
- English 80
- Ethics, Aesthetics 3
- For Education Students 17651
- Foreign Languages 11
- Geography 3
- Geology 1
- History 88
- Maps & Atlases 5
- Mathematics 12624
- Musical Literature 2
- Pedagogics 19
- Philosophy 22
- Physics 15120
- Political Science 5
- Practical Work 59
- Psychology 65
- Religion 4
- Russian and culture of speech 8
- School Textbooks 7
- Sociology 9
- Summaries, Cribs 87
- Test Answers 160
- Tests 8753
- Textbooks for Colleges and Universities 32
- Theses 7
- To Help Graduate Students 14
- To Help the Entrant 38
- Vetting 382
- Works 13
- Информатика 8
- Engineering 872
- Fiction 708
- House, Family & Entertainment 84
- Law 133
- Website Promotion 70
Solution B54 D5 (Figure 5 conv 4) teormeh Targ SM 1989
Refunds: 0
Uploaded: 03.07.2013
Content: d5-54.zip 28,59 kB
250 $ | the discount is | 15% |
show all discounts | ||
1 $ | the discount is | 1% |
Seller will give you a gift certificate in the amount of
Product description
Immediately after payment you will be offered a link to download the task D5 Option 54 (Figure 5 condition 4) of teormeh Reshebnik Targ SM 1989 for part-time students of engineering, construction, transport, instrument-specialties of higher education. The task is made in the format word, packed to the archive zip.
Additional information
A5 B54 - solution to the problem of termehu Targa SM 1989. Conditions to task Dynamics 5: Homogeneous horizontal platform (circular radius R or rectangular with sides of R and 2R, where R = 1,2 m) m1 = weight of 24 kg is rotated with an angular velocity omega0 = 10 s-1 around the vertical axis z, spaced from the center of mass C platform in the distance OC = b (Fig. D5.0 -D5.9, Table. D5); Dimensions for all rectangular platforms is shown in Fig. D5.0a (top view). At time t0 = 0 the chute platform begins to move (under the influence of internal forces) load D m2 = mass of 8 kg law s = AD = F (t) where s is expressed in meters, t - in seconds. At the same time the platform starts to operate a pair of forces with the moment M (given in newton, with M <0, its direction is opposite to that shown in the figures). Determine neglecting the mass of the shaft, the dependence of omega = f (t), t. E. Angular velocity of the platform, as a function of time. In all the figures shown in the load position D, wherein s> 0 (when s <0, the weight is on the other side of the point A). Portraying drawing the problem, hold the z-axis at a predetermined distance OC = b from the center of S.
I would be very grateful if you work after passing will leave a positive review. This is very important.
Thanks in advance.
Feedback
0Period | |||
1 month | 3 months | 12 months | |
0 | 0 | 0 | |
0 | 0 | 0 |